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CSS555C 数据表(PDF) 5 Page - List of Unclassifed Manufacturers

部件名 CSS555C
功能描述  Micropower Timer (with Internal Timing Capacitor)
PDF  13 Pages
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制造商  ETC [List of Unclassifed Manufacturers]
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标志 ETC - List of Unclassifed Manufacturers

CSS555C 数据表(HTML) 5 Page - List of Unclassifed Manufacturers

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Custom Silicon Solutions, Inc. ©2009
5
Version 1.1, May 2009
CSS555C
Micropower Timer (with Internal Timing Capacitor)
Pin Descriptions
Pin Number
Pin Name
Primary Function (Normal Mode)
Secondary Function (EE Programming)
1
VSS
Ground
2
TRIGGER
Initiates timing cycles (Active low)
Serial Clock
3
OUTPUT
Timer Output (CMOS Levels)
Serial Data Out
4
RESET
Asynchronous timer reset (Active low)
Serial Data In
5
CONTROL V
Upper comparator switch level
R/W enable (Active if VCTRL < 0.5V)
6
THRESHOLD
Upper comparator analog input
7
DISCHARGE
Open drain FET, on when OUTPUT = 1
8
VDD
Positive voltage supply
Table 4
Applications Information
General
The CSS555C IC may be used in many applications as a
direct replacement for the popular 555 timer. It features
the lowest 555 operating current and a minimum supply
voltage of 1.2V. It also features a programmable decade
counter for generating long time delays.
An internal
EEPROM stores the counter configuration: Divide by 1
(standard 555) or divide by 10, 100, 10
3, 104, 105 or 106.
The internal counter allows long time delays to be
generated with small value capacitors.
Monostable Operation
(Standard 555 Mode)
The circuit in Figure 6 shows a monostable or “one shot”
configuration. A single, positive output pulse is generated
on the falling edge of the TRIGGER input.
When
TRIGGER goes low, a flip-flop is set, the OUTPUT pin is
set high and DISCHARGE allows the timing capacitor to
charge towards VDD via RA. When VTH reaches the upper
comparator trip level, the flip-flop is reset, OUTPUT is
forced low and DISCHARGE pulls VTH to GND. After VTH
has discharged, the circuit is ready for the next trigger
pulse. Typical signal waveforms are shown in Figure 7.
The RESET input must be held high (inactive) during the
timing cycle. If RESET is brought low, the OUTPUT pin is
immediately forced low and the cycle is terminated.
Figure 6 – Monostable Circuit (Std. Mode)
In the monostable configuration, the duration of the timing
cycle is simply the time required to charge the timing
capacitor from GND to the upper comparator trip level. The
trip level is nominally ⅔ VDD. At low supply voltages it is
increased to 0.9 VDD.
(An EEPROM bit controls this
selection.) The delay time equations for both conditions
are provided in the following paragraph.
Delay Time Equations:
For standard supply voltages (VLOW Bit = 0)
Charge time (VTH = 0V to ⅔ VDD) = 1.1 x RA x CTotal
For low voltage mode (VLOW Bit = 1)
Charge time (VTH = 0V to 0.9 VDD) = 2.3 x RA x CTotal
where CTotal = (CInternal + CExternal) or (CTI + CT)
Figure 7 – Monostable Waveforms (Std. Mode)
Figure 8 provides a log-log selection chart. It shows the
time delay for various combinations of RA and CTotal. With
the counter bypassed (Mult = 1), time delays from 1usec to
1 second are easily generated with capacitor values from
100pF to 1uF. For long time delays (or medium delay
times using small capacitor values) the “Extended Period”
configuration should be used. (See the next section.)
0.0001
0.0010
0.0100
0.1000
1.0000
0.01
0.10
1.00
10.00
100.00
1000.00
Delay Time (ms)
Figure 8 – Time Delay Chart
RA = 1K
10K
100K
Green:
Low VDD
Blue:
Std. VDD
10M
1M
VDD
RA
Trigger
Output
Reset
CT
VDD
Dischg
Thresh
Control
CSS555C
VSS
Trigger
Output
Reset
Trigger
Output
Reset
VTH
Optional
TRIGGER
OUTPUT
VCAP
0V
⅔ VDD
RESET
Mult = 1



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